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High Energy Particles in the Solar Corona

Authors :
Widom, A.
Srivastava, Y. N.
Larsen, L.
Publication Year :
2008

Abstract

Collective Ampere law interactions producing magnetic flux tubes piercing through sunspots into and then out of the solar corona allow for low energy nuclear reactions in a steady state and high energy particle reactions if a magnetic flux tube explodes in a violent event such as a solar flare. Filamentous flux tubes themselves are vortices of Ampere currents circulating around in a tornado fashion in a roughly cylindrical geometry. The magnetic field lines are parallel to and largely confined within the core of the vortex. The vortices may thereby be viewed as long current carrying coils surrounding magnetic flux and subject to inductive Faraday and Ampere laws. These laws set the energy scales of (i) low energy solar nuclear reactions which may regularly occur and (ii) high energy electro-weak interactions which occur when magnetic flux coils explode into violent episodic events such as solar flares or coronal mass ejections.<br />Comment: ReVTeX format with two *.eps figures

Subjects

Subjects :
Nuclear Theory

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.0804.2647
Document Type :
Working Paper